
About Our Group:
Our team is focused on mechanical process development at the Seagate Korat Slider Factory. We are seeking a driven and innovative engineer to lead the development of next-gen grind & slice process — specifically in tooling, machine design and wheel development. Our mission is to transform grind & slice process, enabling high-efficiency, high-precision, and future-ready solutions that align with next-generation product roadmaps.
About the Role – You Will:
● Take ownership of next-gen grind & slice solutions, focusing customized tooling and machine design for new product integration.
● Design and develop next-gen grind & slice wheels customized to align with the unique properties of specific materials.
● Design, develop, and validate automated systems and mechanical tooling that support high-precision, high-throughput manufacturing processes.
● Lead the development of grind & slice transformation projects from concept through proof-of-concept and final deployment.
● Collaborate with cross-functional teams to define requirements, identify bottlenecks, and optimize end-to-end material flow processes.
● Lead risk assessments, feasibility studies, and pilot trials to ensure technical robustness and process scalability.
● Manage project execution, timeline tracking, and stakeholder communication to ensure timely delivery and adoption.
About You:
● Bachelor's or higher degree in Engineering (Mechanical, Mechatronics, Material, or a related field).
● Strong mechanical aptitude with knowledge in automation, tooling design, and process integration.
● Excellent analytical thinking, problem-solving, and technical troubleshooting skills.
● Collaborative mindset with ability to work cross-functionally across development, production, and equipment engineering teams.
● Strong project management skills and accountability in driving tasks to closure under fast-paced timelines.
● Effective communicator in both written and spoken English.
Key Knowledge Includes:
● Knowledge of process development and integration in high-volume manufacturing environments.
● Familiarity with advanced material properties and their applications.
● Proficiency in CAD design or simulation tools and basic automation control systems is an added advantage.